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Langman, Catherine; Zawojewski, Judith; McNicholas, Patricia; Cinar, Ali; Brey, Eric; Bilgic, Mustafa; Mehdizadeh, Hamidreza – Journal of Pre-College Engineering Education Research, 2018
This small-scale design study describes disciplinary learning in mathematical modeling and science from an authentic engineeringthemed module. Current research in tissue engineering served as source material for the module, including science content for readings and a mathematical modeling activity in which students work in small teams to design a…
Descriptors: Engineering Education, Design, Mathematical Models, High School Students
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Taheri, Pooya; Robbins, Philip; Maalej, Sirine – Education Sciences, 2020
Langara College, as one of the leading undergraduate institutions in the province of British Columbia (BC), offers the "Applied Science for Engineering" two-year diploma program as well as the "Engineering Transfer" two-semester certificate program. Three project-based courses are offered as part of the two-year diploma program…
Descriptors: Engineering Education, Student Projects, Teaching Methods, Active Learning
Texas Higher Education Coordinating Board, 2014
"Closing the Gaps: The Texas Higher Education Plan" was adopted in October 2000 by the Texas Higher Education Coordinating Board (THECB). The goal of the "Closing the Gaps" ("CTG") plan is to close educational gaps in participation, success, excellence, and research within Texas and between Texas and other states by…
Descriptors: Higher Education, Achievement Gap, Academic Achievement, Equal Education
Sheridan, Patrick J. – Engineering Education, 1984
Presents data from the Engineering Manpower Commission's 1983 survey of engineering technology degrees. Results indicate a 12 percent increase in associate degrees and a 9.9 percent increase in bachelor's degrees. Summaries of engineering technology degrees awarded by curriculum and degrees by school and degree level are included. (BC)
Descriptors: Associate Degrees, Bachelors Degrees, Degrees (Academic), Educational Trends
Wolf, Lawrence J.; Aldridge, Bill G. – Engineering Education, 1976
Describes a curriculum project aimed at developing a two-year, non-traditional engineering technology program employing the latest instructional materials. Provides a list of descriptive course titles for the program. (MLH)
Descriptors: Associate Degrees, Curriculum, Curriculum Development, Engineering Education
Asfahl, C. Ray – Technological Horizons in Education, 1984
Discusses why educators should not rush headlong into creating robotics curricula and suggests methods of establishing meaningful courses. Indicates that the solution to the problem of building a robotic curriculum is to incorporate the three major areas of robotics (design, operations, maintenance) into existing curricula where they best fit. (JN)
Descriptors: Associate Degrees, College Curriculum, Computer Oriented Programs, Curriculum Development
Moore, Joseph H. – Engineering Education, 1975
A survey of the graduates from bachelor of technology programs at one institution indicates that they were adequately trained for their technical positions in industry. Their job assignments were very similar to those of B.S. graduates in engineering, and very different from those of the associate degree graduates. (MLH)
Descriptors: Associate Degrees, Bachelors Degrees, Employment Experience, Engineering
Burnet, George – Engineering Education, 1975
Descriptors: Academic Standards, Accreditation (Institutions), Associate Degrees, Bachelors Degrees
Phelps, Richard R. – Engineering Education, 1975
Describes a baccalaureate program in engineering technology at the University of North Carolina at Charlotte, which is a "plus two" or upper-division-only curriculum, serving as a receiving unit for the graduates of two-year engineering technology programs. (MLH)
Descriptors: Associate Degrees, Bachelors Degrees, Engineering, Engineering Education
Mao, Leei – 1990
Traditional electronics engineering technology (EET) graduates have a broad and general background in EET, but they encounter difficulty when faced with the modern computerized working environment. The EET curriculum trains students to be broad-spectrum, general electronic technicians rather than specialized ones. EET graduates are competing in…
Descriptors: Associate Degrees, Computers, Electromechanical Technology, Electronic Technicians
Defore, Jesse J. – Engineering Education, 1975
Reports that fewer than half of over one hundred engineering technology curricula surveyed included chemistry as a requirement. Qualitatively describes the content of courses surveyed. Argues for the inclusion of chemistry in all curricula. (GH)
Descriptors: Associate Degrees, Chemistry, College Science, Curriculum
Ellis, Richard A. – Engineering Education, 1990
Presents statistical data for engineering technology degrees, engineering undergraduates, and graduate degrees in 1989. Discusses trends for women, minorities, and foreign students. Includes data for many individual schools. (YP)
Descriptors: Associate Degrees, College Graduates, Community Colleges, Engineering Education
Brodsky, Stanley M. – 1991
This report describes a program which provided on-campus seminars and workshops at the College of Staten Island, Kingsborough Community College, and Hostos Community College in New York. The program was designed to improve recruitment and especially retention of women and minorities in associate degree science and engineering-related programs.…
Descriptors: Associate Degrees, Engineering Education, Faculty Development, Females
Greenwald, Stanley M.; Wecker, Irwin R. – Engineering Education, 1975
Describes a survey of 34 accredited engineering schools located in the northeastern United States. The survey indicated that students transferring with two-year technology degrees into four-year baccalaureate programs in engineering can expect to lose from one to one and a half years of credit from their prior education. (MLH)
Descriptors: Associate Degrees, Bachelors Degrees, College Credits, Engineering
Gourley, Frank A., Jr.; Fountain, Benjamin E., Jr. – Engineering Education, 1975
Describes the engineering technology programs of the North Carolina Community College System. The 16 curricula classified as engineering technologies are offered in 34 institutions for a total of more than 100 separate programs. (MLH)
Descriptors: Associate Degrees, Community Colleges, Engineering, Engineering Education
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